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Transcriptomic insights into growth promotion effect of Trichoderma afroharzianum TM2-4 microbial agent on tomato plants
ZHAO Juan, LIU Ting, LIU Wei-cheng, ZHANG Dian-peng, DONG Dan, WU Hui-ling, ZHANG Tao-tao, LIU De-wen
2021, 20 (5): 1266-1276.   DOI: 10.1016/S2095-3119(20)63415-3
Abstract157)      PDF in ScienceDirect      
Plant growth promoting fungi are receiving increased attention as valuable beneficial microorganisms in crop cultivation due to their capacity to produce bioactive substances, promote plant growth and enhance immune defense functions.  In this study, a novel Trichoderma isolate, designated as TM2-4, was screened from healthy tomato rhizosphere soil and identified as Trichoderma afroharzianum.  Culture filtrate of the isolate TM2-4 displayed obvious bioactive substance production and an evident effect in promoting tomato seed germination, with hypocotyl length, radical length and vigor index increased by 28.7, 19.4 and 62.1%, respectively, after a 100-fold dilution treatment.  To assess the promotion effect and related mechanism of isolate TM2-4, the plant biological indexes and gene expression profiles of tomato plants treated with or without T. afroharzianum TM2-4 microbial agent were investigated by greenhouse pot experiment and RNA sequencing.  The results demonstrated that T. afroharzianum TM2-4 significantly promoted tomato plant growth in terms of plant height, dry weight, number of leaves per plant and root activity, through efficient colonization in the rhizosphere and root system of the plants.  Transcriptome analyses identified a total of 984 differentially expressed genes in T. afroharzianum microbial agent inoculated tomato roots, which were mainly engaged in the biological process of phytohormone homeostasis, antioxidant activity, as well as metabolic pathways including phenylpropanoid biosynthesis and glutathione metabolism.  These findings provide useful information for understanding the mechanism of isolate TM2-4 for tomato plant growth promotion, which would facilitate further development of T. afroharzianum TM2-4 microbial agent for use in vegetable crop production.
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Brassinosteroids and Auxin Down-Regulate DELLA Genes in Fiber Initiation and Elongation of Cotton
HU Ming-yu, LUO Ming, XIAO Yue-hua, LI Xian-bi, TAN Kun-ling, HOU Lei, DONG Jing, LI De-mou, SONG Shui-qing, ZHAO Juan, ZANG Zhen-le, LI Bao-li , PEI Yan
2011, 10 (8): 1168-1176.   DOI: 10.1016/S1671-2927(11)60107-7
Abstract3979)      PDF in ScienceDirect      
Plant hormones play important roles in cotton fiber growth and development. However, the interaction of phytohormonesis largely unknown in fiber cells up to now. DELLA proteins are critical component in GA (gibberellic acid) signaltransduction, which are also regulated by other phytohormones, such as auxin and ethylene. To understand the regulationof DELLA genes in cotton fiber growth and development, we cloned four DELLA genes from upland cotton fibers(Gossypium hirsutum L.), named GhGAI1, GhGAI2, GhGAI3, and GhGAI4. Alignment of the four predicted proteins withother reported DELLA proteins in various species displayed that they shared conserved domains and high homology.Expression profiles of the four GhGAIs in various tissues and organs as well as cotton fibers in different stages displayedthat GhGAI1 has higher transcriptional levels than other GhGAIs in all detected samples. Furthermore, the expressionlevel of GhGAI1 was significantly reduced in 0 dpa (day post anthesis) ovules by addition of IAA and epi-BL, andexogenous epi-BL decreased GhGAI1 level in 7 dpa fiber. Similarly, the levels of the other three GhGAIs in 0 dpa ovulesand 7 dpa fibers were also regulated by applied phytohormones. In addition, the levels of GhGAI1 were higher inXuzhou142 fl mutant (fuzzless-lintless) than in FL (Gossypium hirsutum vs. Xuzhou 142) from -1 to 3 dpa ovules, suggestingthat GhGAI1 engaged in cotton fiber cell initiation. These results indicated that DELLA genes are involved in the processof fiber cell initiation and elongation regulated by different phytohormones.
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