계속 모든 환경에서 줄 번호가 인쇄됩니다.

계속 모든 환경에서 줄 번호가 인쇄됩니다.

나는 사용하고있다lineno.sty패키지. 두 개의 열 레이아웃으로 패키지를 사용하고 있습니다. "오프닝 페이지 미니페이지 컨셉, 키박스, 그림, 테이블 등 많은 사용자 정의 환경을 사용하고 있습니다. 그런데 모든 환경에서 라인번호 출력이 안되네요.

내 요구 사항은"\linenumbers"와 같은 단일 명령을 제어하고 모든 환경에서 자동으로 줄 번호를 인쇄하고 싶습니다.lineno.sty 스타일 파일에서 다른 옵션을 사용할 수 있거나 환경을 방해하지 않고 줄 번호를 생성하기 위해 다른 패키지를 사용할 수 있습니다.

아래에 언급된 내 tex 파일 코딩은 다음과 같습니다.

\documentclass{article}

\usepackage[switch]{lineno}
\begin{document}

\linenumbers

\title{Hormonal crosstalk for root development: a combined experimental and modeling perspective}
\author[1]{Junli Liu}}
\author[2]{James Rowe}
\author[2]{Keith Lindsey}
\affil[1]{Integrative Cell Biology Laboratory, School of Biological and Biomedical Sciences, The Bio physical Sciences Institute, Durham University, Durham, UK}
\editor{Wagner L. Ara\'{u}jo, Universidade Federal de Vi\c{c}osa, Brazil}
\reviewer{Jedrzej Jakub Szymanski, Max Planck Institute of Molecular Plant Physiology, Germany }
\reviewer{Dimas Mendes Ribeiro, Universidade Federal de Vi\c{c}osa, Brazil}
\correspondence{%\protect\includegraphics{Saravana.jpg}\newline
Keith Lindsey is Professor of Plant Molecular Biology in the School of Biological and Biomedical Science sat Durham University, UK. His research interests are in understanding how genes and signaling systems regulate the development of plants. Most of his work is with the model experimental organism Arabidopsis thaliana.\newline}
\abstract{Plants are sessile organisms and therefore they must adapt their growth and architecture to a changing environment. Understanding how hormones and genes interact to coordinate plant growth in a changing environment is a major challenge in developmental biology. Although a localized auxin concentration maximum in the root tip is important for root development, auxin concentration cannot change independently of multiple interacting hormones and genes. In this review, we discuss the experimental evidence showing that the POLARIS peptide of Arabidopsis plays an important role in hormonal crosstalk and root growth, and review the crosstalk between auxin and other hormones for root growth with and without osmotic stress. Moreover, we discuss that experimental evidence showing that, in root development, hormones and the associated regulatory and target genes form a network, in which relevant genes regulate hormone activities and hormones regulate gene expression. We further discuss how it is increasingly evident that mathematical modeling is a valuable tool for studying hormonal crosstalk. Therefore, a combined experimental and modeling study on hormonal crosstalk is important for elucidating the complexity of root development.}
\metanote{$\dagger$Joint corresponding authors}
\keywords{root development, POLARIS peptide, hormonal crosstalk, osmotic stress, kinetic modelin}
\firstpara{\section*{Introduction}
Hormone signaling systems coordinate plant growth and development through a range of com- plex interactions. The activities of hormones such as auxin, ethylene, cytokinin, abscisic acid, gibberellin, and brassinosteroids depend on cellular context and exhibit either synergistic or antagonistic interactions. Additionally, auxin is directionally transported through plant tissues, providing positional and vectorial information during development (Vanneste and Friml, 2009).\hfilneg}
\maketitle


\noindent Patterning in Arabidopsis root development is coordinated via a localized auxin concentration maximum

아래에 언급된 내 출력 페이지

줄 번호가 모든 환경을 볼 수는 없습니다.

친절히 상담해 주시고 해결책을 제시해 주세요

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