Synergies and Entanglement in Secondary Cell Wall Development and Abiotic Stress Response in Trees.

Synergies and Entanglement in Secondary Cell Wall Development and Abiotic Stress Response in Trees.
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DOI:
10.3389/fpls.2021.639769
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发表时间:
2021
影响因子:
5.6
通讯作者:
Tsai CJ
Tsai CJ
中科院分区:
生物学2区
文献类型:
--
作者:
Coleman HD;Brunner AM;Tsai CJ

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可持续粮食、燃料和纤维生产的一个主要挑战是同时对产量、生物质质量和对偶发性环境压力和气候变化的适应能力进行遗传改良。对于杨树和其他森林树木,质量性状涉及木材次生细胞壁(SCW)的改变,用于传统用途,以及日益多样化的生物燃料和生物产品。为特定最终用途所需的木材性质的改变可能对生长和耐应力性产生负面影响。了解SCW基因的不同作用对于快速生长、短轮伐期树木的遗传改良是必要的,这些树木在生长和发育中面临常年的挑战。在这里,我们回顾了最近的进展,协同和拮抗作用的SCW发展和非生物胁迫反应,特别是转录因子,SCW生物发生基因的作用,和parabolic进化。
A major challenge for sustainable food, fuel, and fiber production is simultaneous genetic improvement of yield, biomass quality, and resilience to episodic environmental stress and climate change. For Populus and other forest trees, quality traits involve alterations in the secondary cell wall (SCW) of wood for traditional uses, as well as for a growing diversity of biofuels and bioproducts. Alterations in wood properties that are desirable for specific end uses can have negative effects on growth and stress tolerance. Understanding of the diverse roles of SCW genes is necessary for the genetic improvement of fast-growing, short-rotation trees that face perennial challenges in their growth and development. Here, we review recent progress into the synergies and antagonisms of SCW development and abiotic stress responses, particularly, the roles of transcription factors, SCW biogenesis genes, and paralog evolution.
从进化角度看蛋白质兼职。
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